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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Interactions between graphene oxide and plant cells: Regulation of cell morphology, uptake, organelle damage, oxidative effects and metabolic disorders
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Interactions between graphene oxide and plant cells: Regulation of cell morphology, uptake, organelle damage, oxidative effects and metabolic disorders

机译:氧化石墨烯与植物细胞之间的相互作用:调节细胞形态,摄取,细胞器损伤,氧化作用和代谢紊乱

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摘要

In various fields, much attention has been paid to graphene oxide (GO) nanosheets as a novel engineered nanomaterial. Understanding the interactions between GO and plant cells is critical for evaluating GO nanotoxicity, but the relevant information is largely lacking. Herein, it was discovered that GO nanosheets enveloped algal cells and formed blister-like nanostructures and bridge-like microstructures with cell exudates. Nitrogen-containing chemicals were shown to be responsible for the adhesion of GO to cellular surfaces. GO entered cells and damaged organelles. The two obvious alterations were plasmolysis and an increase in the number of starch grains. A reduction of cell division, aggregation of the chromatin and damage to the chloroplast structure were also observed. Compared with bulk-activated carbon, GO inhibited cell growth, enhanced the generation of reactive oxygen species (ROS) and disrupted antioxidant enzymes. Furthermore, GO caused metabolic disturbances linked to key biological processes. Carbohydrate and amino acid metabolisms were inhibited, and the ratios of unsaturated to saturated fatty acids were increased. The flux of nitrogen metabolism changed from amino acids to cadaverine and urea. These findings close a gap in understanding the phytotoxicity of nanomaterials.
机译:在各个领域中,作为一种新型工程纳米材料,人们对氧化石墨烯(GO)纳米片给予了极大的关注。了解GO和植物细胞之间的相互作用对于评估GO纳米毒性至关重要,但是目前尚缺乏相关信息。在此,发现GO纳米片覆盖藻类细胞并与细胞分泌物形成泡状纳米结构和桥状微结构。已证明含氮化学物质是GO与细胞表面粘附的原因。 GO进入细胞并破坏了细胞器。两种明显的变化是溶酶作用和淀粉粒数量的增加。还观察到细胞分裂的减少,染色质的聚集和叶绿体结构的破坏。与本体活性炭相比,GO抑制细胞生长,增强活性氧(ROS)的生成并破坏抗氧化酶。此外,GO引起与关键生物学过程有关的代谢紊乱。碳水化合物和氨基酸代谢受到抑制,不饱和脂肪酸与饱和脂肪酸的比例增加。氮代谢的通量从氨基酸变为尸胺和尿素。这些发现弥补了在了解纳米材料的植物毒性方面的空白。

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